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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Peptide dendrimers as efficient and biocompatible gene delivery vectors: Synthesis and in vitro characterization
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Peptide dendrimers as efficient and biocompatible gene delivery vectors: Synthesis and in vitro characterization

机译:肽树状大分子作为有效的生物相容性基因传递载体:合成和体外表征

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We report the synthesis and characterization of different generations of dendritic poly(l-lysine) vectors, and their use for in vitro gene transfection. Gel retardation assay revealed that the dendrimers could form complexes with plasmid DNAs (pDNAs), evident from the inhibition of the migration of pDNA at the N/P ratios of 0.5, 1 and 2 by G3, G4 and G5 dendritic generations, respectively. DNase I assay revealed the protection of pDNA acquired from the complexation with dendrimers from nuclease-catalyzed degradation, with the protection capacity of G5 being even stronger than poly(ethyleneimine) (PEI). Atomic force microscopy (AFM) revealed that all 4 generations of dendrimer/DNA complexes studied were of similar particle sizes within 100-200 nm. Zeta potential measurements showed that as the N/P ratio increased from 1 to 25, all dendrimer/pDNA complexes gradually changed from negative to positive charges. The higher generations tended to produce the greater positive potentials, indicating a stronger potency of the complexes to interact with negatively charged cell membranes. In vitro and in vivo cytotoxicity evaluations showed good biocompatibility of the dendrimers and their complexes over the different N/P ratios studied. In vitro gene transfection revealed higher efficiency of G5 than other dendrimers and insensitive variation to the presence of serum. Given its similar transfection efficiency to PEI but lower toxicity to cultured cells, dendrimer G5 could be a better candidate for gene delivery.
机译:我们报告了合成和表征的不同代的树突状聚(l-赖氨酸)载体,及其在体外基因转染中的用途。凝胶阻滞分析表明,树状大分子可以与质粒DNA(pDNA)形成复合物,这分别通过G3,G4和G5树突状生成分别以N / P比0.5、1和2抑制pDNA迁移而明显。 DNase I分析揭示了与树状大分子复合后获得的pDNA受到核酸酶催化降解的保护,G5的保护能力甚至比聚(乙烯亚胺)(PEI)强。原子力显微镜(AFM)显示,研究的所有4代树状大分子/ DNA复合物在100-200 nm范围内具有相似的粒径。 Zeta电势测量表明,随着N / P比从1增加到25,所有的树状聚合物/ pDNA复合物逐渐从负电荷变为正电荷。高世代倾向于产生更大的正电位,表明复合物与带负电的细胞膜相互作用的能力更强。体外和体内细胞毒性评估表明,在研究的不同N / P比下,树枝状聚合物及其复合物具有良好的生物相容性。体外基因转染显示G5的效率高于其他树状聚合物,并且对血清的存在不敏感。鉴于其转染效率与PEI相似,但对培养细胞的毒性较低,树状大分子G5可能是基因传递的更好候选者。

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